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A dual-stage control system for high-speed, ultra-precise linear motion

机译:高速,高精度直线运动的双级控制系统

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Modern manufacturing equipment often requires high-speed and ultra-precise linear motion. For implementing such motion, a coarse-fine dual stage is effective because the coarse stage has a low bandwidth with a large workspace, and in contrast, the fine stage has a high bandwidth with a small stroke. This paper presents the implementation of an air-bearing, dual-stage system and its control strategy. A closed-loop feedback in an absolute space is used to realize coarse-fine control. The fine stage is driven by a voice coil motor that tracks the designed trajectory, while the coarse stage is driven by permanent-magnet linear synchronous motor that tracks the trajectory of the fine stage to prevent its motion saturation. Also analyzed are the coupled dynamics of the air-bearing dual stage driven by a direct-drive motor. Identification and robust control design for the fine stage are introduced in detail. Method tests for the single fine stage are performed, and the results demonstrate that ultra-precision control can be realized for the fine stage. Next, experiments are presented with the dual stage using different loads. Experimental results show that our control strategy can achieve high-speed, ultra-precision linear motion through the dual stage with a satisfactory performance.
机译:现代制造设备通常需要高速和超高精度的直线运动。为了实现这样的运动,因为粗级-细级双级是有效的,因为粗级级具有低带宽且工作空间大,并且相反,细级级具有高带宽且冲程较小。本文介绍了空气轴承双级系统的实现及其控制策略。绝对空间中的闭环反馈用于实现粗调控制。细台由跟踪设计轨迹的音圈电机驱动,而粗台由永磁线性同步电动机驱动,永磁直线同步电机跟踪细台的轨迹以防止其运动饱和。还分析了由直接驱动电机驱动的空气轴承双级的耦合动力学。详细介绍了精细阶段的识别和鲁棒控制设计。对单个精细阶段进行了方法测试,结果表明可以对精细阶段实现超精密控制。接下来,将介绍使用不同负载的双阶段实验。实验结果表明,我们的控制策略可以通过双级实现高速,超精密线性运动,并且性能令人满意。

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